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Energy transfer in structured and unstructured environments: Master equations beyond the Born-Markov approximations

机译:结构化和非结构化环境中的能量转移:超出Born-Markov近似的主方程

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We explore excitonic energy transfer dynamics in a molecular dimer system coupled to both structured and unstructured oscillator environments. By extending the reaction coordinate master equation technique developed by Iles-Smith et al. [Phys. Rev. A 90, 032114 (2014)], we go beyond the commonly used Born-Markov approximations to incorporate system-environment correlations and the resultant non-Markovian dynamical effects. We obtain energy transfer dynamics for both underdamped and overdamped oscillator environments that are in perfect agreement with the numerical hierarchical equations of motion over a wide range of parameters. Furthermore, we show that the Zusman equations, which may be obtained in a semiclassical limit of the reaction coordinate model, are often incapable of describing the correct dynamical behaviour. This demonstrates the necessity of properly accounting for quantum correlations generated between the system and its environment when the Born-Markov approximations no longer hold. Finally, we apply the reaction coordinate formalism to the case of a structured environment comprising of both underdamped (i.e., sharply peaked) and overdamped (broad) components simultaneously. We find that though an enhancement of the dimer energy transfer rate can be obtained when compared to an unstructured environment, its magnitude is rather sensitive to both the dimer-peak resonance conditions and the relative strengths of the underdamped and overdamped contributions. (C) 2016 AIP Publishing LLC.
机译:我们在耦合到结构化和非结构化振荡器环境的分子二聚体系统中探索激发能量传递动态。通过延长由ILES-SMITH等人开发的反应坐标母版式技术。 [物理。 Rev. A 90,032114(2014)],我们超越了常用的Born-Markov近似,以纳入系统环境相关性和所得到的非马利维亚的动态效应。我们获得透明和覆盖振荡器环境的能量传递动态,这些环境与各种参数的数值分层方程完全一致。此外,我们表明,可以在反应坐标模型的半思法极限中获得的Zusman方程通常不能描述正确的动态行为。这证明了当出生 - 马尔科夫近似不再持有时,在系统及其环境之间妥善核对系统及其环境之间的必要性。最后,我们将反应坐标形式主义施加到结构化环境的情况下,其包括同时推迟(即,急剧峰值)和覆盖(宽)组分。我们发现,虽然能比非结构化环境时,应获得的二聚物的能量转移率的提高,其幅度是二聚体峰值共振条件和欠过阻尼和贡献的​​相对优势都相当敏感。 (c)2016 AIP发布LLC。

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